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Mauritz Kop

Publications and source records attributed to Mauritz Kop.

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Towards Geostrategic Critical Minerals and Materials Resilience: Secure Supply-Chain and Criticality Analyses for Quantum Technologies in Arctic and Space Environments

This manuscript maps secure-supply and criticality risks for quantum technologies deployed in extreme environments, linking upstream critical minerals and materials (CMMs) to downstream system performance, continuity of security, and mission assurance. It adopts a reproducible "Critical Level I" screening method to identify materials whose supply concentration, essentiality, and limited mitigatability can create bottlenecks for quantum deployment. The analysis is structured around two use cases: (i) niobium as a key input for superconducting quantum computing and related manufacturing and toolchain dependencies; and (ii) space-qualified superconducting nanowire single-photon detectors (SNSPDs), alongside adjacent single-photon detector platforms such as SPADs, where radiation, thermal cycling, vibration, and electromagnetic interference can degrade device metrics and, in communications settings, threaten continuity of security. The manuscript further situates these dependencies within U.S.-China strategic competition over critical materials, refining capacity, export controls, and overseas mineral acquisitions, while also connecting them to standards-first governance, post-quantum cryptography migration, and the emerging security logic of quantum networking. It argues that static national critical-minerals lists are insufficient for mission-relevant quantum technology and proposes a dedicated Quantum Criticality and Critical Minerals (QCCM) dashboard as a living decision-support tool for tracking concentration, substitutability, qualification bottlenecks, stockpiling gaps, and geopolitical stress signals across quantum platforms. The paper concludes with implications for substitution, diversification, stockpiling, shielding, qualification-by-design, and standards-aligned governance to support secure, sustained, and mission-relevant quantum deployment.

physics.soc-ph

The Nexus of Quantum Technology, Intellectual Property, and National Security: An LSI Test for Securing the Quantum Industrial Commons

Our world of power and national security is increasingly probabilistic: like a quantum wavefunction, it encodes multiple plausible futures until policy choices and shocks collapse them into observable outcomes. Quantum technologies have moved from laboratory curiosities to strategic infrastructure, with an approaching 'event horizon' reflected in recent United States strategic assessments -- incl. the U.S. --China Economic and Security Review Commission's (USSC) call for a Quantum First posture by 2030- and in parallel White House initiatives aimed at securing critical inputs and accelerating trusted innovation. Government research further documents that China's quantum program is centrally mobilized under military-civil fusion, and that its consequential advantages may arise not only from computing milestones but also from sensing and cryptanalytic applications, thereby sharpening the need for a values based deterrence by denial governance posture. The Article's central claim is that the U.S. and its allies should pursue security-sufficient openness, operationalized through a least-trade-restrictive, security-sufficient, innovation-preserving (LSI) test that disciplines both state and private action. The LSI test integrates emerging instruments of economic statecraft to create secure closed loop enclaves for high-sensitivity collaborative R&D. The Article's contribution is an implementable coalition playbook, offering empirically anchored criteria, templates, and differentiated guardrails -- incl. red zone domains where denial is the default -- to avoid both over-securitization and under-securitization. Properly applied, LSI reduces the risk of a self-defeating Silicon Curtain while establishing standards-first interoperability as a stabilizing eigenstate of the international order and enabling RQT by design to shape trusted adoption pathways beyond the coalition, incl. in the majority world.

physics.soc-ph

Towards a European Quantum Act: A Two-Pillar Framework for Regulation and Innovation

Quantum technologies promise transformative advancements but pose significant dual-use risks. Realizing their potential while mitigating risks necessitates a robust, anticipatory, and harmonized EU regulatory framework, grounded in the precautionary principle. Such a framework must be sui generis, as foundational quantum mechanical phenomena -incl. superposition, entanglement, and tunneling -defy the intuitive classical assumptions of factual certainty, causality, and locality that underpin existing legal paradigms, demanding a bespoke regulatory architecture that contributes to the emerging lex specialis for quantum information technologies. Responding to the Quantum Europe Strategy, this contribution outlines the rationale for a dedicated European Quantum Act. Drawing lessons from legislative strategies in the semiconductor (EU/US Chips Acts) and AI (EU AI Act) domains, and analyzing US and Chinese technology policy, we argue the EU needs a 'full-stack' industrial policy. We propose the EU Quantum Act should be a two-pillar instrument, combining New Legislative Framework-style regulation with an ambitious Chips Act-style industrial and security policy. This dual approach fosters innovation through strategic investment (e.g. via a DARPA-style agency) while managing risk through clear, risk-based tiers and regulatory sandboxes. This strategy is presented as essential for EU technological sovereignty and for building a strong transatlantic tech alliance. On the international stage, we advocate for a global non-proliferation framework for quantum and AI wmd's inspired by the IAEA/NPT model and overseen by an 'International Quantum Agency'. This vision culminates in the 'Qubits for Peace' initiative, a global governance structure to ensure quantum technologies are developed safely and ethically. The article concludes by consolidating the analysis into a detailed legislative blueprint.

physics.soc-ph

Towards an Atomic Agency for Quantum-AI

This essay analyzes emerging AI & quantum technology (incl. quantum-AI hybrids) regulation, export controls, and standards in the US, EU, & China, comparing legislative efforts anno 2025 to balance benefits/risks via their distinct innovation systems. While finding convergence on needing responsible governance despite differing philosophies, it posits risks from a US 'Washington effect' (premature regulation under uncertainty) and a Chinese 'Beijing effect' (exporting autocratic norms via standards/Digital Silk Road), exacerbated by export controls and decoupling. Faced with planetary challenges, it explores pathways toward a harmonized Quantum Acquis Planetaire, anchored in universal values ('what connects us') via foundational standards and agile legal guardrails. Smart regulation must incentivize responsible behavior (e.g., RQT by design) and ensure equitable benefit/risk distribution, requiring cooperative stewardship and strategic Sino-American recoupling. This could be coupled with collaborative research platforms for quantum and AI (which are increasingly interdependent) akin to CERN or ITER - emulating successful international resource pooling to foster coordinated responsible innovation. Realizing goals like fault tolerant quantum-centric supercomputing, algorithmic development and use case discovery requires such collective global expertise, challenging protectionist measures that stifle collaboration and supply chains. The Quantum Acquis Planetaire, envisioned as a global body of Quantum Law, could be codified via a UN Quantum Treaty inspired by precedents like the 2024 UN AI Resolution and 1968 Nuclear Non-Proliferation Treaty (NPT), designed to align quantum advancements with global imperatives such as the UN SDGs. To enforce it, manage arms race risks, and ensure non-proliferation, an 'Atomic Agency for Quantum-AI' (modeled on IAEA safeguards) warrants serious examination.

physics.soc-ph

Towards responsible quantum technology, safeguarding, engaging and advancing Quantum R&D

The expected societal impact of quantum technologies (QT) urges us to proceed and innovate responsibly. This article proposes a conceptual framework for Responsible QT that seeks to integrate considerations about ethical, legal, social, and policy implications (ELSPI) into quantum R&D, while responding to the Responsible Research and Innovation dimensions of anticipation, inclusion, reflection and responsiveness. After examining what makes QT unique, we argue that quantum innovation should be guided by a methodological framework for Responsible QT, aimed at jointly safeguarding against risks by proactively addressing them, engaging stakeholders in the innovation process, and continue advancing QT (SEA). We further suggest operationalizing the SEA-framework by establishing quantum-specific guiding principles. The impact of quantum computing on information security is used as a case study to illustrate (1) the need for a framework that guides Responsible QT, and (2) the usefulness of the SEA-framework for QT generally. Additionally, we examine how our proposed SEA-framework for responsible innovation can inform the emergent regulatory landscape affecting QT, and provide an outlook of how regulatory interventions for QT as base-layer technology could be designed, contextualized, and tailored to their exceptional nature in order to reduce the risk of unintended counterproductive effects of policy interventions. Laying the groundwork for a responsible quantum ecosystem, the research community and other stakeholders are called upon to further develop the recommended guiding principles, and discuss their operationalization into best practices and real-world applications. Our proposed framework should be considered a starting point for these much needed, highly interdisciplinary efforts.

quant-ph